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Multimodal imaging of vascular grafts using time-resolved fluorescence and ultrasound

机译:使用时间分辨荧光和超声对血管移植物进行多模式成像

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The translation of engineered tissues into clinic requires robust monitoring of tissue development, both in vitro and in vivo. Traditional methods for the same are destructive, inefficient in time and cost and do not allow time-lapse measurements from the same sample or animal. This study reports on the ability of time-resolved fluorescence and ultrasound measurements for non-destructive characterization of explanted tissue engineered vascular grafts. Results show that TRFS and FLIm are able to assess alterations in luminal composition namely elastin, collagen and cellular (hyperplasia) content via changes in fluorescence lifetime values between normal and grafted tissue. These observations are complemented by structural changes observed in UBM pertaining to graft integration and intimal thickness over the grafted region. These results encourage the future application of a catheter-based technique that combines these imaging modalities for non-destructive characterization of vascular grafts in vivo.
机译:将工程组织转化为临床需要在体外​​和体内对组织发育进行强有力的监测。相同的传统方法具有破坏性,时间和成本效率低下,并且不允许对同一样品或动物进行延时测量。这项研究报告了时间分辨的荧光和超声测量的能力,用于无组织移植的组织工程化血管移植物的无损表征。结果表明,TRFS和FLIm能够通过正常和移植组织之间的荧光寿命值变化来评估管腔组成的变化,即弹性蛋白,胶原蛋白和细胞(增生)含量。这些观察结果得到了UBM中与移植物整合和移植区域内膜厚度有关的结构变化的补充。这些结果鼓励了基于导管的技术的未来应用,该技术结合了这些成像方式,可以对体内的血管移植物进行非破坏性表征。

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